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Related lectures (16)
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Extracellular Matrix and Cell Communication
Explores the extracellular matrix, cell-ECM interactions, and bacterial systems.
Extracellular Matrix: Structure, Function, and Proteins
Explores the extracellular matrix, collagen, fibronectin, laminin, proteoglycans, adhesive proteins, and mechanical properties.
Extracellular Matrix: Structure, Function, and Engineering
Discusses the structure and function of the extracellular matrix and its engineering for tissue applications.
Cell Adhesion and the ECM
Explores cell adhesion, the ECM, drug delivery, immune engineering, and tissue engineering, emphasizing the dynamic nature of ECM and its crucial role in tissue strength and homeostasis.
The Tumor Microenvironment: De Palma
Explores the tumor microenvironment, stromal components, cell interactions, and the impact of inflammation on cancer promotion.
Tumor Angiogenesis and Anti-Angiogenic Therapy
Explores tumor angiogenesis, VEGFA's role, anti-angiogenic therapy efficacy, and resistance mechanisms.
Tumor Angiogenesis: Mechanisms and Implications for Cancer Therapy
Discusses tumor angiogenesis, its mechanisms, and implications for cancer therapy, focusing on the role of VEGF and the angiogenic switch.
Invasion & Metastasis: Mechanisms and Implications
Explores the mechanisms of cancer invasion and metastasis, emphasizing the critical role of cell adhesion, signaling rewiring, and organotropism.
Cell Adhesion and ECM Interaction
Explores cell adhesion, ECM interaction, mechanical sensors, stiffness effect on cell differentiation, and artificial matrices for tissue engineering.
Adhesion and Mechanotransduction
Covers the structure and mechanics of mammalian cells, adhesion, mechanosensation, mechanotransduction, Rho signaling, actin dynamics, specialized actin organizations, integrins, and nuclear mechanotransduction.